One reaction – double stereoinduction: C–H activation as a privileged route towards complex atropisomeric molecules DOI Creative Commons

Amandine Luc,

Joanna Wencel‐Delord

Chemical Communications, Journal Year: 2023, Volume and Issue: 59(53), P. 8159 - 8167

Published: Jan. 1, 2023

Expanding the importance of chirality and implementation stereogenic information within complex molecular design has recently reached a new level: innovative enantiopure scaffolds bearing multiple chiral elements.

Language: Английский

Atropisomers beyond the C–C axial chirality: Advances in catalytic asymmetric synthesis DOI Creative Commons
Guang‐Jian Mei, Wai Lean Koay,

Chun-Yan Guan

et al.

Chem, Journal Year: 2022, Volume and Issue: 8(7), P. 1855 - 1893

Published: May 6, 2022

Language: Английский

Citations

253

Stereoselective construction of atropisomers featuring a C–N chiral axis DOI Creative Commons

Yong‐Jie Wu,

Gang Liao, Bing‐Feng Shi

et al.

Green Synthesis and Catalysis, Journal Year: 2022, Volume and Issue: 3(2), P. 117 - 136

Published: Jan. 4, 2022

Atropisomeric C–N compounds belong to an important class of axially chiral compounds. However, whereas the asymmetric synthesis biaryl atropisomers have been well established, general and efficient strategies access single enantiomers are still rare. Until recently, innovative methods developed, providing new opportunities for highly stereoselective this vital atropisomers. Herein, we comprehensively summarize development in emerging field give some insights into future advance. Emphasis is placed on synthetic strategies.

Language: Английский

Citations

148

Organocatalytic Atroposelective Synthesis of N−N Axially Chiral Indoles and Pyrroles by De Novo Ring Formation DOI

Ke‐Wei Chen,

Zhi‐Han Chen,

Shuang Yang

et al.

Angewandte Chemie International Edition, Journal Year: 2022, Volume and Issue: 61(17)

Published: Jan. 26, 2022

Abstract The first highly atroposelective construction of N−N axially chiral indole scaffolds was established via a new strategy de novo ring formation. This makes use the organocatalytic asymmetric Paal–Knorr reaction well‐designed N ‐aminoindoles with 1,4‐diketones, thus affording ‐pyrrolylindoles in high yields and excellent atroposelectivities (up to 98 % yield, 96 ee). In addition, this is applicable for synthesis bispyrroles 97 More importantly, such heterocycles can be converted into organocatalysts applications catalysis, some molecules display potent anticancer activity. work not only provides but also offers members atropisomer family promising synthetic medicinal chemistry.

Language: Английский

Citations

138

Rhodium-Catalyzed Asymmetric C–H Functionalization Reactions DOI
Chen‐Xu Liu,

Si‐Yong Yin,

Fangnuo Zhao

et al.

Chemical Reviews, Journal Year: 2023, Volume and Issue: 123(16), P. 10079 - 10134

Published: Aug. 1, 2023

This review summarizes the advancements in rhodium-catalyzed asymmetric C–H functionalization reactions during last two decades. Parallel to rapidly developed palladium catalysis, rhodium catalysis has attracted extensive attention because of its unique reactivity and selectivity reactions. In recent years, Rh-catalyzed have been significantly many respects, including catalyst design, reaction development, mechanistic investigation, application synthesis complex functional molecules. presents an explicit outline catalysts ligands, mechanism, scope coupling reagents, applications.

Language: Английский

Citations

117

Catalytic Asymmetric Synthesis of Axially Chiral 3,3'‐Bisindoles by Direct Coupling of Indole Rings DOI

Feng‐Tao Sheng,

Shuang Yang, Shufang Wu

et al.

Chinese Journal of Chemistry, Journal Year: 2022, Volume and Issue: 40(18), P. 2151 - 2160

Published: May 31, 2022

Comprehensive Summary A new strategy for the enantioselective synthesis of axially chiral 3,3'‐bisindoles was devised by direct coupling two indole rings. This makes use C3‐umpolung reactivity 2‐indolylmethanols, which enables catalytic asymmetric addition reaction 2‐indolylmethanols with rationally designed 2‐substituted indoles, thus constructing 3,3'‐bisindole scaffolds in overall excellent yields (up to 98%) high enantioselectivities 96 : 4 er). approach not only has overcome challenges five‐five‐membered heterobiaryls, but also represents a application catalysis. More importantly, this class can undergo variety post‐functionalizations give 3,3'‐bisindole‐based organocatalysts, have found their preliminary applications

Language: Английский

Citations

111

Transition-metal-catalyzed C–H bond alkylation using olefins: recent advances and mechanistic aspects DOI
Debasish Mandal,

Sumali Roychowdhury,

Jyoti Prasad Biswas

et al.

Chemical Society Reviews, Journal Year: 2022, Volume and Issue: 51(17), P. 7358 - 7426

Published: Jan. 1, 2022

Transition metal catalysis has contributed immensely to C-C bond formation reactions over the last few decades, and alkylation is no exception. The superiority of such methodologies traditional evident from minimal reaction steps, shorter times, atom economy while also allowing control regio- stereo-selectivity. In particular, hydrocarbonation alkenes grabbed increased attention due its fundamental ability effectively selectively synthesise a wide range industrially pharmaceutically relevant moieties. This review attempts provide scientific viewpoint systematic analysis recent developments in transition-metal-catalyzed various C-H bonds using simple activated olefins. key features mechanistic studies involved these transformations are described briefly.

Language: Английский

Citations

81

Catalytic Asymmetric Synthesis of Atropisomers Bearing Multiple Chiral Elements: An Emerging Field DOI
Hong‐Hao Zhang,

Tian‐Zhen Li,

Si‐Jia Liu

et al.

Angewandte Chemie International Edition, Journal Year: 2023, Volume and Issue: 63(3)

Published: Nov. 2, 2023

With the rapid development of asymmetric catalysis, demand for enantioselective synthesis complex and diverse molecules with different chiral elements is increasing. Owing to unique features atropisomerism, catalytic atropisomers has attracted a considerable interest from chemical science community. In particular, introducing additional elements, such as carbon centered chirality, heteroatomic planar helical into provides an opportunity incorporate new properties axially compounds, thus expanding potential applications atropisomers. Thus, it important perform transformations synthesize bearing multiple elements. spite challenges in transformations, recent years, chemists have devised powerful strategies under organocatalysis or metal synthesizing wide range enantioenriched Therefore, become emerging field. This review summarizes progress this field indicates challenges, thereby promoting horizon.

Language: Английский

Citations

76

Atroposelective catalysis DOI

Tanno A. Schmidt,

Valeriia Hutskalova,

Christof Sparr

et al.

Nature Reviews Chemistry, Journal Year: 2024, Volume and Issue: 8(7), P. 497 - 517

Published: June 18, 2024

Language: Английский

Citations

16

Rhodium‐Catalyzed Atroposelective Access to Axially Chiral Olefins via C−H Bond Activation and Directing Group Migration DOI

Ruijie Mi,

Haohua Chen, Xukai Zhou

et al.

Angewandte Chemie International Edition, Journal Year: 2021, Volume and Issue: 61(1)

Published: Oct. 22, 2021

Axially chiral open-chain olefins represent an underexplored class of platform. In this report, two classes tetrasubstituted axially acyclic have been accessed in excellent enantioselectivity and regioselectivity via C-H activation (hetero)arenes assisted by a migratable directing group en route to coupling with sterically hindered alkynes. The indoles bearing N-aminocarbonyl afforded C-N acrylamides the assistance racemic zinc carboxylate additive. DFT studies suggest β-nitrogen elimination-reinsertion pathway for migration. Meanwhile, employment N-phenoxycarboxamide delivered C-C enamides migration oxidizing group. Experiments that both cases (hetero)arene substrate adopts well-defined orientation during activation, which turn determines disposition alkyne migratory insertion. Synthetic applications representative are demonstrated.

Language: Английский

Citations

96

Ruthenium(II)/Imidazolidine Carboxylic Acid‐Catalyzed C−H Alkylation for Central and Axial Double Enantio‐Induction DOI Creative Commons
Yanjun Li,

Yan‐Cheng Liou,

João C. A. Oliveira

et al.

Angewandte Chemie International Edition, Journal Year: 2022, Volume and Issue: 61(47)

Published: Sept. 15, 2022

Enantioselective C-H activation has surfaced as a transformative toolbox for the efficient assembly of chiral molecules. However, despite major advances in rhodium and palladium catalysis, ruthenium(II)-catalyzed enantioselective thus far largely proven elusive. In contrast, we herein report on highly regio-, diastereo- alkylation. The key to success was represented by identification novel C2-symmetric imidazolidine carboxylic acids (CICAs), which are easily accessible one-pot fashion, effective ligands. This ruthenium/CICA system enabled installation central axial chirality, featured excellent branched linear ratios with generally >20 : 1 dr up 98 2 er. Mechanistic studies experiment computation were carried out understand catalyst mode action.

Language: Английский

Citations

56